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Feedback control strategies for spatial navigation revealed by dynamic modelling of learning in the Morris water maze

机译:莫里斯水迷宫中学习动态模型揭示的空间导航反馈控制策略

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The Morris water maze is an experimental procedure in which animals learn to escape swimming in a pool using environmental cues. Despite its success in neuroscience and psychology for studying spatial learning and memory, the exact mnemonic and navigational demands of the task are not well understood. Here, we provide a mathematical model of rat swimming dynamics on a behavioural level. The model consists of a random walk, a heading change and a feedback control component in which learning is reflected in parameter changes of the feedback mechanism. The simplicity of the model renders it accessible and useful for analysis of experiments in which swimming paths are recorded. Here, we used the model to analyse an experiment in which rats were trained to find the platform with either three or one extramaze cue. Results indicate that the 3-cues group employs stronger feedback relying only on the actual visual input, whereas the 1-cue group employs weaker feedback relying to some extent on memory. Because the model parameters are linked to neurological processes, identifying different parameter values suggests the activation of different neuronal pathways.
机译:莫里斯(Morris)水迷宫是一种实验性程序,在这种程序中,动物会利用环境提示学会逃避在游泳池中游泳。尽管在研究空间学习和记忆的神经科学和心理学方面取得了成功,但对这项任务的确切记忆和导航要求却知之甚少。在这里,我们提供了行为水平上大鼠游泳动力学的数学模型。该模型由随机游走,航向变化和反馈控制组件组成,其中学习反映在反馈机制的参数变化中。该模型的简单性使其可用于分析记录泳道的实验,并很有用。在这里,我们使用该模型分析了一项实验,在该实验中,训练了大鼠使用三个或一个超自然提示来寻找平台。结果表明,三线索组仅根据实际的视觉输入来使用较强的反馈,而一线索组在某种程度上依赖于记忆来使用较弱的反馈。因为模型参数与神经系统过程相关,所以识别不同的参数值建议激活不同的神经元途径。

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